
Name:Murtazoev Alisher
Title (academic degree):PhD in Chemistry
Speciality: Inorganic Chemistry
e-mail:alisher@inorg.chem.msu.ru
1、Personal profile
Murtazoev Alisher is Teaching at the Chemistry Faculty, Shenzhen MSU-BIT University. His scientific interests include inorganic synthesis, structural analysis of inorganic compounds and magnetochemistry. His teaching activities have been ongoing since 2022. In 2023 he defends PhD thesis in the direction “Inorganic Chemistry”. He developed a course on topological analysis of crystal structures. During his scientific work, he participated in projects from the Russian Science Foundation and the Russian Foundation for Basic Research.
2、Educational experience
2013 – 2017 Faculty of Materials Science, Lomonosov Moscow State University (Dushanbe, Tajikistan) - BS in Materials Sciences
2017 – 2019 Faculty of Materials Science, Lomonosov Moscow State University (Moscow, Russia) - MS in Materials Sciences
2019 – 2023 Faculty of Materials Science, Lomonosov Moscow State University (Moscow, Russia) - PhD in Inorganic Chemistry
3、Work experience
2018 – 2019 Federal Research Center Crystallography and Photonics Russian Academy of Sciences – Intern
2021 – 2024 Quantum Functional Materials Laboratory, National University of Science and Technology “MISiS - Researcher
2022 – 2024 Faculty of Chemistry, Lomonosov Moscow State University (Moscow, Russia) – Engineer-Researcher
4、Selected papers (in last 5 years)
1. Murtazoev Alisher F., Dorofeev Sergey G., Gudovannyy Alexey O., Lyssenko Konstantin A., Dolgikh Valery A., Berdonosov Peter S. New europium selenate (VI) tetrahydrate: Crystal structure and optical properties. // J. Solid State Chem. 2021. V. 311. P. 123090.
2. Murtazoev A.F., Berdonosov P.S., Tafeenko V.A., Dolgikh V.A., Danilovich I.L., Pchelkina Z.V., Vasiliev A.N. Cadmium copper selenite chloride, CdCu2(SeO3)2Cl2, an insulating spin gap system. // J. Solid State Chem. 2021. V. 303. P. 122518.
3. Denisova K., Lemmens P., Wulferding D.,0 Berdonosov P., Dolgikh V., Murtazoev A., Kozlyakova E., Maximova O., Vasiliev A.,Shchetinin I., Dolgushin F.,Iqbal A., Rahaman B.,Saha-Dasgupta T. Cu9O2(SeO3)4Cl6 revisited: Crystal structure, Raman scattering and first- principles calculations. // J. Alloys Compd. 2021. V. 894. P. 162291.
4. Vasiliev A.N., Berdonosov P.S., Kozlyakova E.S., Maximova O.V., Murtazoev A.F., Dolgikh V.A., Lyssenko K.A., Pchelkina Z.V., Gorbunov D.I., Chung S.H., Koof H.-J., Whangbo M.- H. Observation of a 1/3 magnetization plateau in Pb2Cu10O4(SeO3)4Cl7 arising from (Cu2+)7 clusters of corner-sharing (Cu2+)4 tetrahedra. // Dalton Trans. 2022. V. 51. P. 15017-15021.
5. Murtazoev A.F., Berdonosov P.S., Aksenov S.M., Kuznetsov A.N., Dolgikh V.A., Nelyubina Y.V., Merlino S. Polytypism of Ln(SeO3)(HSeO3)·2H2O compounds: synthesis and crystal structure of the first monoclinic modification of Nd(SeO3)(HSeO3)·2H2O, DFT calculations and order/disorder description. // Acta Crystallogr., Sect. B: Struct. Sci. 2023. V. 79. №2. P. 176-183.
6. Murtazoev A.F., Lyssenko K.A., Markina M.M., Dolgikh V.A., Vasiliev A.N., Berdonosov P.S. New Nabokoite-like Phases ACu7TeO4(SO4)5Cl (A = Na, K, Rb, Cs) with Decorated and Distorted Square Kagome Lattices. // ChemPhysChem 2023. V. 24. P. e202300111.
7. Murtazoev A.F., Berdonosov P.S., Lyssenko K.A., Dolgikh V.A., Pchelkina Z.V., Zakharov K.V., Geidorf M.Y., Vasilchikova T.M., Volkova O.S. Vasiliev A.N. Anhydrous copper tellurite disulfate Cu3TeO3(SO4)2 featuring the coexistence of spin singlets and a long-range antiferromagnetic order. // Dalton Trans. 2023. V. 52. P. 9247-9253.
8. Murtazoev A.F., Berdonosov P.S., Lyssenko K.A., Dolgikh V.A., Geidorf M.Y., Volkova O.S., Koo H.-J., Whangbode M.-H., Vasiliev A.N. A cascade of magnetic phase transitions and a 1/3-magnetization plateau in selenite–selenate Co3(SeO3)(SeO4)(OH)2 with kagomé-like Co2+ ion layer arrangements: the importance of identifying a correct spin lattice. // Dalton Trans. 2023. V. 52. P. 9664-9672.
9. Rebrov Ya. V., Glazkov V.N., Murtazoev A.F., Dolgikh V.A., Berdonosov P.S. High-frequency dielectric anomalies in a highly frustrated square kagomé lattice nabokoite family compounds ACu7(TeO4)(SO4)5Cl (A = Na, K, Rb, Cs). // J. Magn. Magn. Mater. 2024. V. 592. P. 171786.
10. Markina M.M., Berdonosov P.S., Vasilchikova T.M., Zakharov K.V., Murtazoev A.F., Dolgikh V.A., Moskin A.V., Glazkov V.N., Smirnov A.I., Vasiliev A.N. Static and resonant properties of decorated square kagomé lattice KCu7(TeO4)(SO4)5Cl. // Mater. Chem. Phys. 2024. № 129348